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Performance improvement of a split air conditioner by using an energy saving device

机译:通过使用节能装置来改善分体式空调的性能

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This study investigated the effect of an energy saving device (ESD) on the performance of a split-type air conditioner (SAC). The ESD was fabricated using a moisture-transferring and quick-drying textile (MTQDT), a condensate pipeline, and a distributor. The MTQDT was coated on the shell surface of the compressor to absorb the condensate expelled by a condensate pipeline and distributor to enable evaporative cooling of the compressor. The SAC was tested under various outdoor air conditions (29, 32, and 37 degrees C; 55% relative humidity) and under a fixed indoor air condition (26 degrees C; 50% relative humidity), and the performance of the SAC before and after ESD installation was compared. Results demonstrated that the MTQDT effectively improved compressor cooling and the efficiency of the SAC. Compared with the SAC without an ESD under the optimal condition, the shell temperature of the compressor, high-side pressure, and power consumption of the proposed SAC were 15.1 degrees C, 2.7%, and 9.2% lower, respectively. Moreover, the dehumidification capacity and energy efficiency ratio of the proposed SAC were 25.4% and 7.3% higher, respectively. (C) 2018 Elsevier B.V. All rights reserved.
机译:这项研究调查了节能设备(ESD)对分体式空调(SAC)性能的影响。 ESD是使用湿气转移和快干纺织品(MTQDT),冷凝水管道和分配器制造的。 MTQDT涂覆在压缩机的外壳表面上,以吸收由冷凝水管道和分配器排出的冷凝水,从而实现压缩机的蒸发冷却。在各种室外空气条件(29、32和37摄氏度;相对湿度55%)和固定室内空气条件(26摄氏度;相对湿度50%)下对SAC进行了测试,并测试了SAC的性能比较ESD安装后。结果表明,MTQDT有效地改善了压缩机的冷却和SAC的效率。与在最佳条件下不带ESD的SAC相比,建议的SAC的壳体温度,高压侧压力和功耗分别降低了15.1摄氏度,2.7%和9.2%。此外,拟议的SAC的除湿能力和能效比分别提高了25.4%和7.3%。 (C)2018 Elsevier B.V.保留所有权利。

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